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合成的聚(苯乙烯 - 二乙烯基苯)包封填充材料及基于该材料的磺酸阳离子交换相的电色谱特性

Electrochromatographic properties of synthetic poly(styrene-divinylbenzene) encapsulated packing material and sulphonic cation-exchange phase based on the former.

作者信息

Li Bo, Li Yongshan, Han Nanyin, Xu Bingjiu

机构信息

Department of Analytical Chemistry, Peking University School of Pharmaceutical Science, Beijing 100083, China.

出版信息

Beijing Da Xue Xue Bao Yi Xue Ban. 2003 Dec 18;35(6):618-21.

Abstract

OBJECTIVE

To develop new kinds of stationary phases suitable for applications in capillary electrochromatography (CEC), as well as in LC, which can be tailored to realize selective separations of solutes difficult to separate with conventional stationary phases.

METHODS

Purchased spherical silica particles (5 microm) were refluxed in anhydrous toluene with vinyl-triethoxysilane for 18 h, to modify the surface with vinylsilyl groups. The silylated silica particles were subsequently stirred in an n-henanol-acetonitril mixture (1:4, volume fraction) for 18 h. Styrene and divinylbenzene in the mixture co-polymerized to form a crosslinked encapsulation layer on the silica surface, and bonded on the surface vinyl groups at the same time, both reactions were initiated by azo-iso-butyronitrile. The poly(Styrene-divinylbenzene) encapsulated silica(PS-DES) produced can be used as a non-conventional stationary phase for CEC itself. By sulphonation of the PS-DES phase with chlorosulphonic acid, strong cation-exchange stationary phase of sulphonic type was obtained.

RESULTS

The manufactured PS-DES as well as the sulphonated phases were respectively packed into capillaries,and the columns thus prepared were tested for their chromatographic characteristics. It was found that the PS-DES phase showed reversed-phase characteristics. Due to the phenyl groups in the encapsulated polymer, it introduced pi-pi electronic interaction between the solutes molecules and stationary phase during the chromatographic separation process, therefore it showed unique selectivity on separating aromatic compounds, also polar- as well as some alkaline drugs was analyzed on the column packed with the phase. It was demonstrated that the sulphonated phase could be used to prepare columns for the separation of alkaline drugs, symmetric peaks were obtained for them and base-line separation was realized.

CONCLUSION

It is possible that these stationary phases prepared can be used for solving the analytical problems in which non-conventional selectivity are needed ( the analyses of alkaline drugs are examples) In some cases, the analysts can realize the anticipated separation results based on the different separation mechanism from that of the conventional stationary phases.

摘要

目的

开发适用于毛细管电色谱(CEC)以及液相色谱(LC)的新型固定相,使其能够经定制实现对用传统固定相难以分离的溶质进行选择性分离。

方法

将购得的球形二氧化硅颗粒(5微米)与乙烯基三乙氧基硅烷在无水甲苯中回流18小时,用乙烯基硅烷基团修饰其表面。随后将硅烷化的二氧化硅颗粒在正己醇 - 乙腈混合物(1:4,体积分数)中搅拌18小时。混合物中的苯乙烯和二乙烯基苯发生共聚,在二氧化硅表面形成交联包封层,同时与表面的乙烯基键合连接,这两个反应均由偶氮异丁腈引发。制得的聚(苯乙烯 - 二乙烯基苯)包封二氧化硅(PS - DES)本身可作为CEC的非常规固定相。通过用氯磺酸对PS - DES相进行磺化,得到磺酸型强阳离子交换固定相。

结果

将制得的PS - DES以及磺化相分别填充到毛细管中,并对由此制备的色谱柱的色谱特性进行测试。发现PS - DES相表现出反相特性。由于包封聚合物中的苯基,在色谱分离过程中它在溶质分子与固定相之间引入了π - π电子相互作用,因此它在分离芳香族化合物时表现出独特的选择性,该固定相填充柱还可对极性以及一些碱性药物进行分析。结果表明,磺化相可用于制备分离碱性药物的色谱柱,对碱性药物可获得对称峰并实现基线分离。

结论

所制备的这些固定相有可能用于解决需要非常规选择性的分析问题(碱性药物分析就是例子)。在某些情况下,分析人员基于与传统固定相不同的分离机制能够实现预期的分离结果。

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